CN107393745B - Switch button cap assembling device - Google Patents

Switch button cap assembling device Download PDF

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Publication number
CN107393745B
CN107393745B CN201710635757.1A CN201710635757A CN107393745B CN 107393745 B CN107393745 B CN 107393745B CN 201710635757 A CN201710635757 A CN 201710635757A CN 107393745 B CN107393745 B CN 107393745B
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button cap
guide groove
cylinder
groove
switch
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CN107393745A (en
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马平湘
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LINHAI ZHONGCHUANG AUTOMATIC EQUIPMENT Co Ltd
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LINHAI ZHONGCHUANG AUTOMATIC EQUIPMENT Co Ltd
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Publication of CN107393745A publication Critical patent/CN107393745A/en
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    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01HELECTRIC SWITCHES; RELAYS; SELECTORS; EMERGENCY PROTECTIVE DEVICES
    • H01H11/00Apparatus or processes specially adapted for the manufacture of electric switches

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  • Engineering & Computer Science (AREA)
  • Manufacturing & Machinery (AREA)
  • Sealing Of Jars (AREA)
  • Manufacture Of Switches (AREA)

Abstract

The invention discloses a switch button cap assembling device, which belongs to the technical field of machining equipment and comprises a workbench (11), wherein a conveying groove (12) for driving a switch shell is formed in the workbench (11), and a button cap feeding mechanism, an assembling mechanism and a discharging mechanism are sequentially arranged on the side edge of the conveying groove (12); the button cap is assembled by the parts of the assembling mechanism and finally transferred out by the discharging mechanism and assembled on the switch, so that the whole button cap can be assembled quickly and automatically.

Description

Switch button cap assembling device
Technical Field
The invention belongs to the technical field of machining equipment, and particularly relates to a switch button cap assembly device for assembling a switch button cap assembly.
Background
The switch is used as a common accessory on the market, and is widely used in the aspect of our life. Particularly, a button cap capable of being turned left and right is arranged on a shell of the single-head switch, and people can realize circuit switching by turning the button cap left and right.
Be provided with a spring and a grain of rice in the inside of button cap, the wane is located button cap below, and spring drive grain of rice is contradicted with the wane that is used for the intercommunication circuit all the time toward outer to when the button cap is overturned, the wane also moves along with it, and then reaches the control to the circuit.
In order to fix the spring and the rice grains, a corresponding station is usually arranged below the button cap for placing the spring and the rice grains, so that people need to load the spring and the rice grains into the lower part of the button cap one by one according to a specified sequence, the workload of workers is large, and the efficiency is low. Simultaneously, also can set up the glow stick that is convenient for people at night operation switch on some button caps, to the glow stick, it also needs the workman to assemble by hand, and the assembling process is comparatively loaded down with trivial details.
Disclosure of Invention
The invention aims to overcome the technical problem that accessories in a button cap in the prior art need to be manually installed by workers, and provides a switch button cap assembling device which can automatically assemble the accessories of the button cap and directly assemble the button cap on a switch shell.
In order to solve the technical problem, the invention provides a switch button cap assembling device which comprises a workbench, wherein a conveying groove for driving a switch shell is formed in the workbench, a button cap feeding mechanism, an assembling mechanism and a discharging mechanism which are sequentially connected are arranged on the side edge of the conveying groove, and the tail end of the discharging mechanism is positioned above the conveying groove; the assembly mechanism comprises a guide groove for sliding the button cap, one end of the guide groove is communicated with the button cap feeding mechanism, the other end of the guide groove is communicated with the discharging mechanism, and a transmission mechanism for driving the button cap to move along the guide groove at intervals is arranged on the side edge of the guide groove; the assembly mechanism further comprises two movable blocks which are stacked up and down, a first accommodating cavity which is communicated up and down and is used for accommodating a spring is arranged on the movable block positioned above the assembly mechanism, a second accommodating cavity which is communicated up and down and is used for accommodating rice grains is arranged on the movable block positioned below the assembly mechanism, the first accommodating cavity and the second accommodating cavity are positioned on the same straight line and staggered front and back, through grooves which correspond to the second accommodating cavity are formed in the movable block positioned above the assembly mechanism, the through grooves are connected with rice grain vibrating discs for materials to enter, and the first accommodating cavity is connected with a spring vibrating disc for materials to enter; the movable blocks are respectively and independently connected with an assembly air cylinder for driving the movable blocks to move horizontally, and the assembly air cylinders drive first accommodating cavities and second accommodating cavities on the two movable blocks to align to each other at the bottoms of the guide grooves; the guide slot bottom is provided with the ejector pin that can penetrate the second and hold the chamber bottom, be connected with the top cylinder on the ejector pin, the top cylinder pushes up grain of rice and spring and makes its assembly push button lid.
As a further improvement of the present invention, in the above switch button cap assembling device, the button cap feeding mechanism comprises a button cap vibration tray and a first linear feeder, the button cap vibration tray is connected to the first linear feeder, and an outlet of the first linear feeder is communicated with an inlet of the guide groove.
Foretell shift knob cap assembly device, baffle box feed inlet department are connected with the accessory feed mechanism that supplies the glow stick to get into, accessory feed mechanism is including glow stick vibration dish, the second straight line feeder of being connected with glow stick vibration dish, the export of second straight line feeder is provided with the upset subassembly that is used for overturning the glow stick to assembly angle, the entry intercommunication of upset subassembly and guide way, the guide way top is provided with the air cylinder that presses that is used for impressing the glow stick to the button cap.
In the above assembly device for the switch button cap, the turnover assembly includes a turnover table, two embedding grooves having the same outline with the fluorescent rods are symmetrically arranged on the turnover table, the embedding grooves axially penetrate through the turnover table, one of the embedding grooves is opposite to the outlet of the second linear feeder, the other embedding groove is opposite to the inlet of the guide groove, and a pushing cylinder for pushing the fluorescent rods in the embedding grooves into the guide groove is arranged on the workbench; the turning plate is connected with a power part for driving the turning plate to rotate
Foretell shift knob cap assembly device, the power spare is connected with the upset rack including fixing the upset cylinder on the workstation on the upset cylinder, and the upset dish outline distributes and has the teeth of a cogwheel with upset rack toothing.
Foretell shift knob cap assembly device, transmission device includes the removal strip parallel with the guide way, the interval is provided with the bayonet socket that can with button cap joint on the removal strip, be provided with on the workstation and be used for the drive to remove the strip and do X, Y axle direction motion's transmission cylinder respectively.
In the device for assembling the switch button cap, the discharging mechanism comprises a discharging guide groove, one end of the discharging guide groove is communicated with the guide groove, the other end of the discharging guide groove is positioned above the conveying groove, and the bottom of the discharging guide groove is hollowed out; the automatic discharging device is characterized in that a discharging rack is arranged on the workbench, a movable frame capable of moving along the direction of the discharging guide groove is arranged on the discharging rack, and a pushing block used for pushing the button cap to move along the discharging guide groove is fixedly arranged on the movable frame.
Foretell shift knob cap assembly device, be provided with on the adjustable shelf and be used for assembling the push button cap into the push cylinder of switch casing, the piston rod that pushes down the cylinder runs through and promotes the piece, ejection of compact guide slot end still be provided with can with promote the bullet piece that the piece will push button cap centre gripping.
Foretell shift knob cap assembly device, the guide way below still is provided with and is used for giving the rubber coating head of button cap bottom rubber coating, the fixed rubber coating cylinder that is provided with on the workstation, the rubber coating cylinder is connected with the rubber coating head, and the rubber coating cylinder drive rubber coating head goes up and down to be used for the rubber coating.
Compared with the prior art, the invention has the beneficial effects that: 1. in the process of assembling the button cap, the speed is high, and the efficiency is high; 2. the rice grains and the spring can be assembled by directly utilizing the jacking cylinder when the rice grains and the spring are assembled by adopting the structure of the double-layer movable block, the structure is simple, and the assembly efficiency is high; 3. the whole equipment can be used for assembling and processing the switch with the fluorescent bar at the same time.
Drawings
Fig. 1 is a perspective view of the present invention.
FIG. 2 is a structural diagram of the loading mechanism, the assembling mechanism and the discharging mechanism of the present invention.
Fig. 3 is a partial structural view of a guide groove portion of the present invention.
FIG. 4 is a partial structural view of an assembly mechanism according to the present invention.
Fig. 5 is a structural view of the movable block in the loading state according to the present invention.
Fig. 6 is a structural view of the movable block of the present invention in an assembled state.
FIG. 7 is a partial view showing the construction of a component feeder mechanism for mounting a glow stick according to the present invention.
Fig. 8 is a partial structural view of the flip assembly of the present invention.
The reference numbers illustrate: 11-workbench, 12-conveying groove, 21-button cap vibration disc, 21 a-first linear feeder, 22-fluorescent rod vibration disc, 22 a-second linear feeder, 23-pressing cylinder, 24-turning disc, 25-embedding groove, 26-pushing cylinder, 27-turning cylinder, 28-turning rack, 31-movable block, 311-first accommodating cavity, 312-second accommodating cavity, 313-through groove, 32-rice grain vibration disc, 33-spring vibration disc, 34-assembling cylinder, 35-ejector rod, 36-ejecting cylinder, 37-shell, 41-discharging guide groove, 42-discharging rack, 43-movable rack, 44-pushing block, 45-pressing cylinder, 46-elastic block, 51-guide groove, 52-moving strip, 53-bayonet, 54 a-transmission cylinder I, 54 b-transmission cylinder II, 61-gluing cylinder and 62-gluing head.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings.
As shown in fig. 1, the switch button cap assembling device comprises a workbench 11, wherein a conveying groove 12 for driving a switch shell is arranged on the workbench 11, and the switch shell is assembled on the conveying groove 12 in a pipeline manner. The button cap feeding mechanism, the assembling mechanism and the discharging mechanism are sequentially arranged on the side edge of the tail end of the conveying groove 12, the button cap enters the assembling mechanism from the button cap feeding mechanism to be assembled, and finally the button cap is assembled on the switch shell through the discharging mechanism.
As shown in fig. 2 and 3, a guide groove 51 is provided on the table 11, and a button cap feeding mechanism is provided at an entrance position of the guide groove 51. The bottom of the guide groove 51 is hollowed out, and the bottom of the button cap is downward when the button cap is clamped on the guide groove 51, so that the spring and the rice grains can be installed from the bottom upwards. The button cap feeding mechanism includes a button cap vibration tray 21, and a first linear feeder 21a, the button cap vibration tray 21 is fixed on the table 11, and the first linear feeder 21a is connected to the button cap vibration tray 21. And the outlet of the first linear feeder 21a communicates with the inlet of the guide groove 51, and the button caps are arranged one by one on the first linear feeder 21a and then enter the guide groove 51 by being driven by the button cap vibration plate 21.
As shown in fig. 2, 7 and 8, an accessory feeding mechanism for receiving a glow stick is further provided at the entrance position of the guide groove 51. The accessory feeding mechanism comprises a fluorescent rod vibration disc 22 and a second linear feeder 22a connected with the fluorescent rod vibration disc 22, the fluorescent rod vibration disc 22 is fixed on the workbench 11, fluorescent rods are arranged in the second linear feeder 22a one by one through vibration, and an overturning component is arranged at the outlet of the second linear feeder 22 a. The upset subassembly is including turning over carousel 24, and the central symmetry is provided with two inlay card grooves 25 on turning over carousel 24, and inlay card groove 25 axially runs through turning over carousel 24, and inlay card groove 25's shape is unanimous with the glo-stick outline, and the glo-stick just in time can be gone into in inlay card groove 25. One of the catching grooves 25 is opposite to the outlet of the second linear feeder 22a, and the other catching groove 25 is opposite to the inlet of the guide groove 51. The overturning plate 24 is connected with a power piece for driving the overturning plate to rotate. Wherein, the power part comprises a turning cylinder 27 fixed on the worktable 11, the turning cylinder 27 is connected with a turning rack 28, the turning disc 24 is in a gear shape, and the outer contour thereof is distributed with gear teeth meshed with the turning rack 28.
Thus, after the fluorescent rod comes out from the second linear feeder 22a, the fluorescent rod enters the clamping groove 25 of the turnover disc 24, the turnover cylinder 27 drives the turnover rack 28 to do linear motion, and then the turnover disc 24 is driven to rotate 180 degrees, so that the fluorescent rod can turn over the state with the bottom facing downwards from the state with the bottom facing upwards when the fluorescent rod comes out from the fluorescent rod vibration disc 22.
As shown in fig. 2, 3 and 7, the table 11 is provided with a push-in cylinder 26 for pushing the fluorescent rod in the engaging groove 25 into the guide groove 51, and a push cylinder 23 for pushing the fluorescent rod into the button cap is provided on the side of the guide groove 51. The piston rod of the push-in cylinder 26 is displaced horizontally, while the piston rod of the press cylinder 23 is moved vertically. The pushing cylinder 26 pushes out the fluorescent rod turned over on the turning disc 24 to enable the fluorescent rod to enter the button cap at the inlet position of the guide groove 51, and then the pressing cylinder 23 presses the fluorescent rod into the button cap to complete the assembly of the fluorescent rod on the button cap.
Meanwhile, as shown in fig. 3, a gluing cylinder 61 and a gluing head 62 are arranged at the inlet of the guide groove 51, the gluing cylinder 61 is fixedly arranged on the workbench 11, the end of a piston rod of the gluing cylinder 61 is fixed with the gluing head 62, the gluing head 62 can move up and down under the driving of the gluing cylinder 61, glue can be discharged from the gluing head 62, and when the button cap enters the guide groove 51 from the first linear feeder 21a, the gluing cylinder 61 drives the gluing head 62 to ascend, so that the bottom of the button cap is glued, and the fixation after the subsequent spring is loaded is convenient.
As shown in fig. 3, the table 11 is provided with a transmission mechanism for driving the button cap to move along the guide groove 51 at intervals, and the transmission mechanism is located at the side of the guide groove 51. The transmission device comprises a movable strip 52 parallel to the guide groove 51, wherein bayonets 53 capable of being clamped with the button caps are arranged on the movable strip 52, the number of the bayonets 53 is multiple, the bayonets 53 are arranged at intervals, and the bayonet 53 can just allow the button caps to be clamped in. The worktable 11 is provided with a first transmission air cylinder 54a for driving the moving bar 52 to respectively move along the X axis and a second transmission air cylinder 54b for driving the moving bar 52 to move along the Y axis. When driving the button cap, the second transfer cylinder 54b first drives the moving bar 52 to approach the guide groove 51, so that the bayonet 53 locks the button cap at the inlet position of the guide groove 51, and then the first transfer cylinder 54a drives the moving bar 52 to slide along the direction of the guide groove 51, thereby driving the button cap to move forward by a distance of one station. Then, the second transfer cylinder 54b drives the moving bar 52 to move away from the guide slot 51, so that the bayonet 53 is separated from the button cap, and then the first transfer cylinder 54a drives the moving bar 52 to move reversely along the direction of the guide slot 51, so that the moving bar 52 is restored to the original position, and the bayonet 53 can be clamped with a new button cap. This is repeated so that the button caps fed in the first linear feeder 21a can be intermittently pushed forward one by one.
As shown in fig. 2 and 4, the assembly mechanism includes a housing 37 fixed on the worktable 11, two movable blocks 31 stacked up and down are embedded in the housing 37, the two movable blocks 31 are both perpendicular to the guide groove 51, an assembly cylinder 34 is connected to the upper surface of each movable block 31, and the assembly cylinder 34 is fixedly mounted on the housing 37 to drive the movable blocks 31 to move horizontally.
As shown in fig. 5, a first accommodating cavity 311 for accommodating the spring is formed in the upper movable block 31, the first accommodating cavity 311 is in a cylindrical shape and is communicated from top to bottom, the size of the first accommodating cavity 311 is just suitable for the spring to be placed, and the bottom of the first accommodating cavity 311 is sealed by the lower movable block 31, so that the spring is prevented from falling. Be provided with the second that is used for holding the rice grain on the movable block 31 that is located the below and hold chamber 312, the second holds chamber 312 and switches on from top to bottom and the shape is cylindricly, and the second holds chamber 312 bottom and is sealed and then hinders the whereabouts of rice grain by casing 37. Meanwhile, a through groove 313 capable of being butted against the second accommodating cavity 312 is further provided on the movable block 31 located above, and the through groove 313 has a shape and a size consistent with the second accommodating cavity 312.
As shown in fig. 4 and 5, a rice grain vibration disk 32 and a spring vibration disk 33 are further arranged at a higher position on the worktable 11, the rice grain vibration disk 32 is communicated with the through groove 313 through a plastic conduit, rice grains are discharged from the upper surface of the rice grain vibration disk 32, then enter the through groove 313 through the plastic conduit, and finally slide into the second accommodating cavity 312. The spring vibration disc 33 is communicated with the first accommodating cavity 311 through a plastic conduit, and the spring enters the first accommodating cavity 311 after coming out of the spring vibration disc 33, so that the feeding is completed.
As shown in fig. 4 to 6, after the first accommodating cavity 311 and the second accommodating cavity 312 are filled with the spring and the rice grains respectively, the assembling cylinder 34 pushes the movable block 31 to move toward the guide slot 51, the upper movable block 31 is displaced a little more than the lower movable block 31, so that the first accommodating cavity 311 and the second accommodating cavity 312 are aligned with each other, as shown in fig. 6, and when aligned, the first accommodating cavity 311 and the second accommodating cavity 312 are both located at the bottom of the guide slot 51. The bottom of guide way 51 is provided with top actuating cylinder 36, runs through on the casing 37 and is provided with ejector pin 35, and top actuating cylinder 36 drive ejector pin 35 goes up and down, aligns each other when the guide way 51 bottom with the grain of rice when the spring, and ejector pin 35 drive grain of rice rises with the spring, and then in the assembly advances the button cap, glues on the colloid of button cap bottom, the spring is at last, the structure of grain of rice under just in time can accord with the installation requirement, once the top moves can accomplish the assembly.
As shown in fig. 1 and 3, the discharging mechanism includes a discharging guide groove 41, the discharging guide groove 41 is fixed on the worktable 11, one end of the discharging guide groove 41 is communicated with the guide groove 51, the other end is located above the conveying groove 12, the button cap enters the discharging guide groove 41 after being processed and assembled in the guide groove 51, and then slides along the discharging guide groove 41 and enters the switch housing of the conveying groove 12 for assembly.
A discharging rack 42 is fixedly arranged on the workbench 11, a movable frame 43 capable of moving back and forth along the direction of the discharging guide groove 41 is arranged on the discharging rack 42, and the air cylinder drives the movable frame 43 to slide left and right along the direction of the discharging guide groove 41.
The movable frame 43 is fixedly provided with a pushing block 44 for pushing the button cap to move along the discharging guide groove 41, and the pushing block 44 is inserted into the discharging guide groove 41 and can be tightly attached to one side of the button cap. The pusher block 44 drives the displacement of the button cap in response to the displacement of the movable frame 43.
The end of the discharge channel 41 above the transfer trough 12 is hollowed out and the button cap can fall from the end onto the transfer trough 12. The side wall of the discharging guide groove 41 is also provided with a spring block 46, the position of the spring block 46 is opposite to that of the pushing block 44, and when the pushing block 44 pushes the button cap to slide to the tail end along the discharging guide groove 41, the spring block 46 and the pushing block 44 clamp the button cap to prevent the button cap from falling off. Meanwhile, a push-down cylinder 45 for assembling the button cap into the switch housing is further provided on the movable frame 43, and a piston rod of the push-down cylinder 45 penetrates the push block 44. When the button cap is clamped by the push block 44 and the spring block 46, the push cylinder 45 is pressed down to drive the button cap into the switch housing, and the final assembly is completed.
The embodiments of the present invention have been described in detail with reference to the accompanying drawings, but the present invention is not limited to the above embodiments, and it will be apparent to those skilled in the art that several modifications and improvements may be made without departing from the present invention, and these should be construed as falling within the scope of the present invention.

Claims (9)

1. The utility model provides a shift knob cap assembly device which characterized by: the automatic switch comprises a workbench (11), wherein a conveying groove (12) for driving a switch shell is formed in the workbench (11), a button cap feeding mechanism, an assembling mechanism and a discharging mechanism are sequentially arranged on the side edge of the conveying groove (12), and the tail end of the discharging mechanism is positioned above the conveying groove (12); the assembly mechanism comprises a guide groove (51) for sliding the button cap, one end of the guide groove (51) is communicated with the button cap feeding mechanism, the other end of the guide groove (51) is communicated with the discharging mechanism, and a transmission mechanism for driving the button cap to move along the guide groove (51) at intervals is arranged on the side edge of the guide groove (51); the assembly mechanism further comprises two movable blocks (31) which are stacked up and down, a first containing cavity (311) which is communicated up and down and is used for containing a spring is arranged on the movable block (31) positioned above, a second containing cavity (312) which is communicated up and down and is used for containing rice grains is arranged on the movable block (31) positioned below, the first containing cavity (311) and the second containing cavity (312) are positioned on the same straight line and staggered front and back, a through groove (313) which corresponds to the second containing cavity (312) is arranged on the movable block (31) positioned above, the through groove (313) is connected with a rice grain vibrating disc (32) for materials to enter, and the first containing cavity (311) is connected with a spring vibrating disc (33) for the materials to enter; the movable blocks (31) are respectively and independently connected with an assembling air cylinder (34) used for driving the movable blocks (31) to move horizontally, and the assembling air cylinders (34) drive first accommodating cavities (311) and second accommodating cavities (312) on the two movable blocks (31) to align to each other at the bottoms of the guide grooves (51); guide way (51) bottom is provided with ejector pin (35) that can penetrate the second and hold chamber (312) bottom, be connected with ejecting cylinder (36) on ejector pin (35), ejecting cylinder (36) make its assembly into the button lid with rice grain and spring top.
2. The switch button cap assembling device according to claim 1, wherein: the button cap feeding mechanism comprises a button cap vibration disc (21) and a first linear feeder (21a), wherein the button cap vibration disc (21) is connected with the first linear feeder (21a), and an outlet of the first linear feeder (21a) is communicated with an inlet of a guide groove (51).
3. The switch button cap assembling device according to claim 1, wherein: guide chute feed inlet department is connected with the accessory feed mechanism that supplies the glow stick to get into, accessory feed mechanism is including glow stick vibration dish (22), second straight line feeder (22a) of being connected with glow stick vibration dish (22), the export of second straight line feeder (22a) is provided with the upset subassembly that is used for overturning the glow stick to assembly angle, the entry intercommunication of upset subassembly and guide way (51), guide way (51) top is provided with and is used for impressing press cylinder (23) of button cap with the glow stick.
4. The switch button cap assembling device according to claim 3, wherein: the overturning assembly comprises an overturning disc (24), two clamping grooves (25) which are consistent with the outline of the fluorescent rod are symmetrically arranged in the center of the overturning disc (24), the clamping grooves (25) axially penetrate through the overturning disc (24), one clamping groove (25) is opposite to the outlet of the second linear feeder (22a), the other clamping groove (25) is opposite to the inlet of the guide groove (51), and a pushing cylinder (26) for pushing the fluorescent rod in the clamping groove (25) into the guide groove (51) is arranged on the workbench (11); the overturning plate (24) is connected with a power piece for driving the overturning plate to rotate.
5. The switch button cap assembling device according to claim 4, wherein: the power part comprises a turnover cylinder (27) fixed on the workbench (11), a turnover rack (28) is connected to the turnover cylinder (27), and gear teeth meshed with the turnover rack (28) are distributed on the outer contour of the turnover disc (24).
6. The switch button cap assembling device according to claim 1, wherein: the transmission device comprises a moving strip (52) parallel to the guide groove (51), bayonets (53) capable of being connected with the button caps are arranged on the moving strip (52) at intervals, and a first transmission cylinder (54a) used for driving the moving strip (52) to move in the X-axis direction and a second transmission cylinder (54b) used for driving the moving strip (52) to move in the Y-axis direction are arranged on the workbench (11).
7. The switch button cap assembling device according to claim 1, wherein: the discharging mechanism comprises a discharging guide groove (41), one end of the discharging guide groove (41) is communicated with the guide groove (51), the other end of the discharging guide groove is positioned above the conveying groove (12), and the bottom of the discharging guide groove is hollowed; be provided with ejection of compact frame (42) on workstation (11), be provided with movable frame (43) that can follow ejection of compact guide slot (41) direction motion on ejection of compact frame (42), fixed being provided with on movable frame (43) is used for promoting to press pushing up pushing away the piece (44) that the cap moved along ejection of compact guide slot (41).
8. The switch button cap assembly device according to claim 7, wherein: be provided with on adjustable shelf (43) and be used for assembling the push button cap down air cylinder (45) into switch housing, the piston rod of air cylinder (45) is run through and is promoted piece (44) down, ejection of compact guide slot (41) end still be provided with can with promote piece (44) bullet piece (46) with the push button cap centre gripping.
9. The switch button cap assembling device according to claim 1, wherein: the gluing device is characterized in that a gluing head (62) used for gluing the bottom of the button cap is further arranged below the guide groove (51), a gluing cylinder (61) is fixedly arranged on the workbench (11), the gluing cylinder (61) is connected with the gluing head (62), and the gluing cylinder (61) drives the gluing head (62) to lift and lower for gluing.
CN201710635757.1A 2017-07-31 2017-07-31 Switch button cap assembling device Active CN107393745B (en)

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Application Number Priority Date Filing Date Title
CN201710635757.1A CN107393745B (en) 2017-07-31 2017-07-31 Switch button cap assembling device

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Application Number Priority Date Filing Date Title
CN201710635757.1A CN107393745B (en) 2017-07-31 2017-07-31 Switch button cap assembling device

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CN107393745A CN107393745A (en) 2017-11-24
CN107393745B true CN107393745B (en) 2020-03-17

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Families Citing this family (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112713028B (en) * 2020-12-21 2022-08-30 深圳市道和实业有限公司 Automatic intelligent system of making of intelligent power rice grain
CN114101838B (en) * 2021-12-28 2023-07-21 深圳市合利士智能装备有限公司 Grounding terminal assembling and welding equipment of motor and operation method thereof
CN114871721B (en) * 2022-04-27 2023-06-09 浙江今立电器有限公司 Processing device for processing fluorescent piece on cover plate

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105448562A (en) * 2015-12-24 2016-03-30 东莞市益诚自动化设备有限公司 Automatic assembly machine for wall control switch
CN205248150U (en) * 2015-12-24 2016-05-18 东莞市益诚自动化设备有限公司 Automatic kludge of wall control switch
CN205845767U (en) * 2016-07-13 2016-12-28 陈林华 A kind of shift knob kludge with Transport disc
CN207038390U (en) * 2017-07-31 2018-02-23 临海市中创自动化设备有限公司 Shift knob cap assembling device

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105448562A (en) * 2015-12-24 2016-03-30 东莞市益诚自动化设备有限公司 Automatic assembly machine for wall control switch
CN205248150U (en) * 2015-12-24 2016-05-18 东莞市益诚自动化设备有限公司 Automatic kludge of wall control switch
CN205845767U (en) * 2016-07-13 2016-12-28 陈林华 A kind of shift knob kludge with Transport disc
CN207038390U (en) * 2017-07-31 2018-02-23 临海市中创自动化设备有限公司 Shift knob cap assembling device

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